Abstract
Highly porous carbon-doped TiO2 (C-TiO2) has been prepared, for the first time, through a light-driven approach using crystalline titanium glycolate (TG) as the single-source precursor. Although the nonthermally prepared porous C-TiO2 is amorphous, it shows a remarkable visible-light photocatalytic activity higher than that of nitrogen-doped TiO2 (N-TiO2) due to its significant surface area (530m2/g) and pore-rich structure. X-ray photoelectron, electron paramagnetic resonance, and UV-Vis diffuse reflectance spectroscopy reveal that the as-prepared porous C-TiO2 photocatalyst contains Ti-O-C bonds which result in visible-light absorption of the material at wavelengths less than 550nm. Furthermore, it is discovered that the Ti-O-C bonds in the as-prepared C-TiO2 is easily transformed to coke-type species under mild thermal treatment (200C). The resulting coke-containing porous TiO 2 is an even better visible-light photocatalyst, almost twice as effective as N-TiO2, because of its stronger visible-light absorption. The Ti-O-C and the coke-containing porous TiO2 materials follow two different mechanisms in the visible-light photocatalysis process for degradation of methylene blue. © 2012 Xiao-Xin Zou et al.
Cite
CITATION STYLE
Zou, X. X., Li, G. D., Zhao, J., Su, J., Wei, X., Wang, K. X., … Chen, J. S. (2012). Light-driven preparation, microstructure, and visible-light photocatalytic property of porous carbon-doped TiO2. International Journal of Photoenergy, 2012. https://doi.org/10.1155/2012/720183
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